论文标题
通过将逻辑量子嵌入qudit中的逻辑量子
Decoherence Mitigation by Embedding a Logical Qubit in a Qudit
论文作者
论文摘要
存储在Qubit中的量子信息迅速丢失了环境。稳健量子位的实现是量子计算中最重要的挑战之一。本文中,我们建议将逻辑量子嵌入Qudit的歧管中,作为在长时间内保留量子信息的方案。在相同的条件下(例如,变形通道),与纯的两级系统(QUBIT)相比,逻辑量子量子的子序列具有延长的寿命。量子信息的保留进一步改善,随着逻辑量子标准的分离的分离。可以从$ d $级别系统的量子图下的进化过程中的编码和非编码子空间的熵产生来理解终生增强。通过$ d $级别的多种流形中的中级级别相干演变的附加途径提供了一种信息提供信息的机制:可逆替代通道,即不可逆转的信息丢失信息到开放量子系统的环境特征。
Quantum information stored in a qubit is rapidly lost to the environment. The realization of robust qubits is one of the most important challenges in quantum computing. Herein we propose to embed a logical qubit within the manifold of a qudit as a scheme to preserve quantum information over extended periods of time. Under identical conditions (e.g. decoherence channels) the submanifold of the logical qubit exhibits extended lifetimes compared to a pure two-level system (qubit). The retention of quantum information further improves with separation between the sublevels of the logical qubit. Lifetime enhancement can be understood in terms of entropy production of the encoding and non-encoding subspaces during evolution under a quantum map for a $d$-level system. The additional pathways for coherent evolution through intermediate sublevels within a $d$-level manifold provide an information-preserving mechanism: reversible alternative channels to the irreversible loss of information to the environment characteristic of open quantum systems.